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Separation of particles from hot gases using metallic foams

机译:使用金属泡沫从热气中分离颗粒

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摘要

One of the most complicated tasks in the field of hot gas cleaning is the removal of particles from a complex mixture of degradation products formed during thermal treatment. A robust and completely reliable technology is still to be developed to achieve high efficiencies. In the past few years, significant improvements have been brought to gas cleaning technologies. Nevertheless, none of the existing processes has proved fully successful. The aim of this work is to perform the filtration of particles generated in fluidized bed gasification experiments using metallic foams. The gasified material used is dried sewage sludge. Nickel-chromium metallic foams are likely to have inherent properties that would make them suitable for use in structures where strength, high temperature-resistance and corrosion resistance are required. Moreover, metallic foams are characterized structurally by their cell topology, relative density, high porosity (ε=0.95) and cell size. In hot gas filtration, high temperature-resistance and low pressure drop to specific area ratio are essential characteristics. In the present work, several experimental operating conditions (heating time, temperature, washing method and metallic foam thickness) are investigated. The pressure drops in the metallic foams during filtration are calculated. The experimental results obtained are compared with numerical simulation results and a good agreement is obtained. The metallic foams are simulated from tomography results and a model is created.
机译:热气清洁领域中最复杂的任务之一是从热处理过程中形成的降解产物的复杂混合物中去除颗粒。仍然需要开发一种强大且完全可靠的技术来实现高效率。在过去的几年中,气体净化技术已经取得了重大进步。但是,没有任何现有过程被证明是完全成功的。这项工作的目的是使用金属泡沫对流化床气化实验中产生的颗粒进行过滤。使用的气化材料是干燥的污水污泥。镍铬金属泡沫可能具有固有的性能,使其适合用于需要强度,耐高温和耐腐蚀的结构。此外,金属泡沫在结构上以其泡孔拓扑结构,相对密度,高孔隙率(ε= 0.95)和泡孔尺寸为特征。在热气过滤中,高耐热性和低压降比表面积是必不可少的特征。在本工作中,研究了几种实验操作条件(加热时间,温度,洗涤方法和金属泡沫厚度)。计算过滤期间金属泡沫中的压降。将获得的实验结果与数值模拟结果进行比较,并获得良好的一致性。从断层扫描结果模拟金属泡沫并创建模型。

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